Compact Edge Compute for Demanding Workloads
The Dell PowerEdge XR4520c is a 2U single-width server sled designed for PowerEdge XR4000 edge deployments. Built for space-constrained environments, it supports high-performance compute, dense M.2 NVMe storage, PCIe Gen4 expansion, and flexible deployment in XR4000r or XR4000z chassis configurations.
Key Benefits and Features
- Supports 1 x 3rd Generation Intel Xeon D Scalable processor with up to 20 cores.
- Designed for edge workloads including VDI, virtual machines, video surveillance, vSAN/VM, point of sale, and data communication.
- Enables dense storage with 8 x M.2 NVMe SSDs on a PCIe add-in card and 4 x M.2 NVMe SSDs on an M.2 riser module.
- Supports PCIe Gen4 expansion with 2 x16 slots in the XR4520c sled.
- Compatible with Dell embedded management tools including iDRAC9, iDRAC Direct, and iDRAC RESTful API with Redfish.
Ideal Use Cases
- Edge computing deployments where rack depth and footprint are limited.
- Video surveillance and machine vision environments that require local processing.
- Virtual machine, vSAN/VM, and VDI workloads at distributed sites.
- Retail, point-of-sale, and data communication infrastructure.
Technical Specifications
- Product Type: 2U single-width server sled
- Model: Dell PowerEdge XR4520c
- Processor Support: 1 x 3rd Generation Intel Xeon D Scalable processor with up to 20 cores
- Memory: 4 x DDR4 DIMM slots, RDIMM 256 GB max or LRDIMM 512 GB max, up to 2933 MT/s
- Memory Type: Registered ECC DDR4 DIMMs only
- Storage: 8 x M.2 NVMe SSDs on PCIe add-in card and 4 x M.2 NVMe SSDs on M.2 riser module
- PCIe: 2 x16 Gen4 full height, full length slots
- GPU Support: Up to 2 x 150W single-width GPUs or 1 x 250W double-width GPU
- Dimensions: 83.25 mm height, 167.2 mm width, 342.5 mm depth
- Weight: 2.46 kg
Deploy Dell XR4520c Edge Compute with Confidence
Choose the Dell PowerEdge XR4520c for compact edge infrastructure that combines scalable compute, NVMe storage density, PCIe Gen4 expansion, and Dell PowerEdge management capabilities in an efficient sled-based design.